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41.
Paul A ST JOHN 《中国药理学报》2009,(6):656-662
Nicotinic acetylcholine receptors (nAChRs) play critical roles throughout the body. Precise regulation of the cellular loca- tion and availability of nAChRs on neurons and target cells is critical to their proper function. Dynamic, post-translational regulation of nAChRs, particularly control of their movements among the different compartments of cells, is an important aspect of that regulation. A combination of new information and new techniques has the study of nAChR trafficking poised for new breakthroughs. 相似文献
42.
F Haque ST Fazal SA Ahmad SZ Abbas S Naseem 《Journal of Medical Imaging and Radiation Oncology》2006,50(1):63-65
Primary osteogenic sarcoma of the skull is an exceedingly rare condition. An adult male patient is described, who had a painless swelling in the right forehead that had rapidly enlarged in the previous 6 months. Radiological investigations showed a large destructive mass lesion involving the right side of the frontal bone with extension into the frontal sinus, causing marked extradural compression of brain parenchyma. Histopathological examination confirmed the lesion to be primary osteogenic sarcoma. 相似文献
43.
Expression of differential nitric oxide synthase isoforms in human normal gastric mucosa and gastric cancer tissue 总被引:10,自引:2,他引:10
The present study investigated the expression and distribution of three
isoforms of nitric oxide synthase (NOS) in different anatomical regions of
the human stomach and in gastric neoplastic tissues by immunohistochemistry
using specific antibodies. Intracellular localization of individual
isoenzymes of NOS was detected in normal gastric mucosa. Gastric cancer
tissues had a marked reduction of all three NOS isoforms expression. The
expression of the endothelial NOS, neuronal NOS and inducible NOS in the
tumor tissue was significantly lower than in normal gastric mucosa (P =
0.01, P = 0.02, P < 0.01, respectively). In the tumor tissue the
expression of inducible NOS was significantly lower than the expression of
both constitutive forms of NOS (P < 0.01). There was a tendency to
higher expression of both constitutive forms of NOS in earlier stages T2 of
the tumor compared to advanced T4 tumor. In contrast, the expression of
inducible NOS was higher than in the advanced T4 tumor than in the earlier
stages T2 of the tumor. The mapping of the expression of endothelial NOS,
neuronal NOS and inducible NOS in human stomach showed higher expression of
NOS isoforms in the distal third than in the proximal third of the stomach
(P = 0.03, P = 0.04, P = 0.01, respectively). We conclude that there is
greater expression of NOS in the stomach corpus and in antrum than in the
proximal third of the normal human stomach mirroring the anatomical
predilection of common pathological changes in this part of the human
stomach. Furthermore, there was loss of the expression of individual
isoenzymes in gastric neoplasms.
相似文献
44.
45.
Testicular cancers in closely related family members are rare. We herein report the second incidence of pure seminoma occurring in a father and son. The increased risk of malignant tumors developing in the undescended testis is well established. We also describe the second reported incidence of testicular cancers occurring in 2 non-twin brothers, in which 1 of the cancers developed in an undescended testis. 相似文献
46.
Considerable evidence suggests that, in instrumental conditioning, rats learn the relationship between actions and their specific consequences or outcomes. The present study examined the role of the dorsomedial striatum (DMS) in this type of learning after excitotoxic lesions and reversible, muscimol-induced inactivation. In three experiments, rats were first trained to press two levers for distinct outcomes, and then tested after training using a variety of behavioural assays that have been established to detect action-outcome learning. In Experiment 1, pre-training lesions of the posterior DMS abolished the sensitivity of rats' instrumental performance to both outcome devaluation and contingency degradation when tested in extinction, whereas lesions of the anterior DMS had no effect. In Experiment 2, both pre-training and post-training lesions of the posterior DMS were equally effective in reducing the sensitivity of performance both to devaluation and degradation treatments. In Experiment 3, the infusion of muscimol into the posterior DMS selectively abolished sensitivity of performance to devaluation and contingency degradation without impairing the ability of rats to discriminate either the instrumental actions performed or the identity of the earned outcomes. Taken together, these results suggest that the posterior region of the DMS is a crucial neural substrate for the acquisition and expression of action-outcome associations in instrumental conditioning. 相似文献
47.
Taylor WR Chen JW Meltzer H Gennarelli TA Kelbch C Knowlton S Richardson J Lutch MJ Farin A Hults KN Marshall LF 《Journal of neurosurgery》2003,98(1):205-213
The authors prospectively used a new hand-held point-and-shoot pupillometer to assess pupillary function quantitatively. Repetitive measurements were initially made in more than 300 healthy volunteers ranging in age from 1 to 87 years, providing a total of 2,432 paired (alternative right eye, left eye) measurements under varying light conditions. The authors studied 17 patients undergoing a variety of nonintracranial, nonophthalmological, endoscopic, or surgical procedures and 20 seniors in a cardiology clinic to learn more about the effects of a variety of drugs. Additionally, the authors carried out detailed studies in 26 adults with acute severe head injury in whom intracranial pressure (ICP) was continuously monitored. Finally, five patients suffering from subarachnoid hemorrhage were also studied. Quantitative pupillary measurements could be reliably replicated in the study participants. In healthy volunteers the resting pupillary aperture averaged 4.1 mm and the minimal aperture after stimulation was 2.7 mm, resulting in a 34% change in pupil size. Constriction velocity averaged 1.48 +/- 0.33 mm/second. Pupillary symmetry was striking in both healthy volunteers and patients without intracranial or uncorrected visual acuity disorders. In the 2,432 paired measurements in healthy volunteers, constriction velocity was noted to fall below 0.85 mm/second on only 33 occasions and below 0.6 mm/second on eight occasions (< one in 310 observations). In outpatients, the reduction in constriction velocity was observed when either oral or intravenous narcotic agents and diazepam analogs were administered. These effects were transient and always symmetrical. Among the 26 patients with head injuries, eight were found to have elevations of ICP above 20 mm Hg and pupillary dynamics in each of these patients remained normal. In 13 patients with a midline shift greater than 3 mm, elevations of ICP above 20 mm Hg, when present for 15 minutes, were frequently associated with a reduction in constriction velocity on the side of the mass effect to below 0.6 mm/second (51% of 156 paired observations). In five patients with diffuse brain swelling but no midline shift, a reduction in constriction velocities did not generally occur until the ICP exceeded 30 mm Hg. Changes in the percentage of reduction from the resting state following stimulation were always greater than 10%, even in patients receiving large doses of morphine and propofol in whom the ICP was lower than 20 mm Hg. Asymmetry of pupillary size greater than 0.5 mm was observed infrequently (< 1%) in healthy volunteers and was rarely seen in head-injured patients unless the ICP exceeded 20 mm Hg. Pupillometry is a reliable technology capable of providing repetitive data on quantitative pupillary function in states of health and disease. 相似文献
48.
BACKGROUND: Glutathione S-transferase (GST) pi is a detoxifying enzyme abundant in normal prostate basal cells but only rarely expressed in prostate cancer cells. The current studies are the first to focus on GST pi in the stromal compartment of prostate tumors. METHODS: We employed immunohistochemical, immunofluorescence, and Western blot analysis to measure GST pi expression and subcellular localization in 21 primary and metastatic tumors from patients with hormone independent prostate cancer, as well as seven lymph node metastases and six prostatectomy specimens. RESULTS: GST pi was detectable in stromal cells in 17 of the 21 hormone independent prostate tumors. GST pi tissue distribution in hormone independent tumors coincided with vimentin staining, suggesting that GST pi is expressed by reactive fibroblasts and/or myofibroblasts. CONCLUSIONS: The current results suggest that prostate cancer cells induce an injury response in the stroma during progression to hormone independence, which results in GST pi expression. Stromal GST pi may contribute to chemoresistence of advanced prostate cancer. 相似文献
49.
50.
Sassan Rafizadeh Zheng Zhang Ryan L. Woltz Hyo Jeong Kim Richard E. Myers Ling Lu Dipika Tuteja Anil Singapuri Amir Ali Ziaei Bigdeli Sana Ben Harchache Anne A. Knowlton Vladimir Yarov-Yarovoy Ebenezer N. Yamoah Nipavan Chiamvimonvat 《Proceedings of the National Academy of Sciences of the United States of America》2014,111(27):9989-9994
For an excitable cell to function properly, a precise number of ion channel proteins need to be trafficked to distinct locations on the cell surface membrane, through a network and anchoring activity of cytoskeletal proteins. Not surprisingly, mutations in anchoring proteins have profound effects on membrane excitability. Ca2+-activated K+ channels (KCa2 or SK) have been shown to play critical roles in shaping the cardiac atrial action potential profile. Here, we demonstrate that filamin A, a cytoskeletal protein, augments the trafficking of SK2 channels in cardiac myocytes. The trafficking of SK2 channel is Ca2+-dependent. Further, the Ca2+ dependence relies on another channel-interacting protein, α-actinin2, revealing a tight, yet intriguing, assembly of cytoskeletal proteins that orchestrate membrane expression of SK2 channels in cardiac myocytes. We assert that changes in SK channel trafficking would significantly alter atrial action potential and consequently atrial excitability. Identification of therapeutic targets to manipulate the subcellular localization of SK channels is likely to be clinically efficacious. The findings here may transcend the area of SK2 channel studies and may have implications not only in cardiac myocytes but in other types of excitable cells.Small-conductance Ca2+-activated K+ (SK or KCa2) channels are highly unique in that they are gated solely by changes in intracellular Ca2+ (Ca2+i) concentration. Hence, the channels function to integrate changes in Ca2+ concentration with changes in membrane potentials. SK channels have been shown to be expressed in a wide variety of cells (1–3) and mediate afterhyperpolarizations following action potentials in neurons (1, 4, 5). We have previously documented the expression of several isoforms of SK channels in human and mouse atrial myocytes that mediate the repolarization phase of the atrial action potentials (6, 7). We further demonstrated that SK2 (KCa2.2) channel knockout mice are prone to the development of atrial arrhythmias and atrial fibrillation (AF) (8). Conversely, a recent study by Diness et al. suggests that inhibition of SK channels may prevent AF (9). Together, these studies underpin the importance of the precise control for the expression of these ion channels in atria and their potential to serve as a future therapeutic target for AF.Current antiarrhythmic agents target the permeation and gating properties of ion channel proteins; however, increasing evidence suggests that membrane localization of ion channels may also be pharmacologically altered (10). Furthermore, a number of disorders have been associated with mistrafficking of ion channel proteins (11, 12). We have previously demonstrated the critical role of α-actinin2, a cytoskeletal protein, in the surface membrane localization of cardiac SK2 channels (13, 14). Specifically, we demonstrated that cardiac SK2 channel interacts with α-actinin2 cytoskeletal protein via the EF hand motifs in α-actinin2 protein and the helical core region of the calmodulin (CaM) binding domain (CaMBD) in the C terminus of SK2 channel. Moreover, direct interactions between SK2 channel and α-actinin2 are required for the increase in cell surface localization of SK2 channel.Here, to further define the functional interactome of SK2 channel in the heart, we demonstrate the role of filamin A (FLNA), another cytoskeletal protein, in SK2 channel surface membrane localization. In contrast to α-actinin2 protein, FLNA interacts not with the C terminus, but with the N terminus of the cardiac SK2 channel. FLNA is a scaffolding cytoskeletal protein with two calponin homology domains that has been shown to be critical for the trafficking of a number of membrane proteins (15–19). Our data demonstrate that FLNA functions to enhance membrane localization of SK2 channels. Moreover, using live-cell imaging, we demonstrate the critical roles of Ca2+i on the membrane localization of SK2 channel when the channels are coexpressed with α-actinin2, but not FLNA. A decrease in Ca2+i results in a significant decrease in SK2 channel membrane localization. Our findings may have important clinical implications. A rise in Ca2+i—for example, during rapid pacing or atrial tachyarrhythmias—is predicted to increase the membrane localization of SK2 channel and result in the abbreviation of the atrial action potentials and maintenance of the arrhythmias. 相似文献